Perancangan Alat Pemberi Makan Hewan Otomatis dengan Sensor Ultrasonik dan Teknologi Mikrokontroler

Authors

  • Bayu Asta Tarrosa Politeknik Negeri Jakarta
  • Bilal Ramadhan Politeknik Negeri Jakarta
  • Kemas M. Hafizh Politeknik Negeri Jakarta
  • M. Rifky Anugrah Politeknik Negeri Jakarta
  • Muslimin Muslimin Politeknik Negeri Jakarta
  • Dhiya Luqyana Politeknik Negeri Jakarta
  • Azam Milah Muhamad Politeknik Negeri Jakarta

DOI:

https://doi.org/10.33504/manutech.v17i01.515

Keywords:

automatic pet feeder, arduino microcontroller, ultrasonic sensor, feeding schedule

Abstract

 Along with the advancement of technology and the increasing busyness of everyday people, the need for tools to help with daily activities is becoming increasingly important, including for pet owners such as cats. This study designs an automatic tool called "Zen-Feeder," which is an automatic pet feeding tool that uses a microcontroller and ultrasonic sensor to detect the presence of cats, provide food on a scheduled basis and according to the dosage so that owners can more freely manage their time and activities outside the home. The ultrasonic sensor detects the presence of cats around the feeding place, according to the characteristics of cats coming to the feeding place when it is time to eat. The tool's servo motor will automatically open the feeding valve when the cat is within a certain distance from the feeding place and release food with a predetermined dosage. Then, the valve will close again. In light of the growing demands of modern life, the development of the "Zen-Feeder" represents a significant advancement in pet care technology, offering convenience and peace of mind for cat owners by ensuring their pets are fed consistently and healthily, even in their absence.

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References

. Subrata R, Andrew A, Sulaiman S Perancangan Sistem Automatic Pet Feeder Berbasis Internet of Things Jetri : Jurnal Ilmiah Teknik Elektro (2021) 17-30 Vol. 18, No. 1, Agustus 2020

. Thamrin J, Ikhsan Saputro M, Tristanti Julfia F Alat Pemberi Makan Hewan Peliharaan Otomatis Berbasis Teknologi Internet Of Things (IoT) Teknologi Informatika dan Komputer Volume 6 No 1; Maret 2020

. Wafa Tajul Arifin Bisri Rancang Bangun Alat Pemberi Pakan Otomatis Terhadap Kucing Peliharaan Menggunakan Arduino Uno Progran Studi Teknik Elektro Universitas Panca Marga Probolinggo T E S L A | VOL. 23 | NO. 1 | MARET 2021 |

. Khair U, Sabrina T Alat Pemberi Makan Kucing Otomatis Berbasis Arduino Uno Pada Pet Shop Sebatik (2019) 23(1)

. Habillah Abbas S, Ilham W Sistem Kendali Alat Pemberi Pakan Kucing Otomatis Menggunakan Modul Nodemcu Abstrak JURNAL DIGIT Vol. 11, No.2 November 2021

. Adlan Bagus Pradana, Syifaul Jinan, Anindya Pramesti , Jimmy Trio Putra Rancangan Alat Pemberi Pakan Kucing Otomatis Dengan Mikrokontroler Berbasis Sensor Ultrasonik infotronik : Jurnal Teknologi Informasi dan Elektronika (Volume 6 No. 1, Juni 2021)

. Nova Ramadhan Rohjai Badarudin Rancang Bangun Alat Pemberi Makan Kucing Terjadwal Menggunakan Modul RTC Berbasis Arduino Uno JITET (Jurnal Informatika dan Teknik Elektro Terapan) Vol. 12 No. 3, pISSN: 2303-0577

. Siregar A, Khair U, Harliana P Sistem Pemberian Pakan Kucing Otomatis Menggunakan SMS Gateway Berbasis Arduino Uno ALGORITMA: Jurnal Ilmu Komputer dan Informatika Volume: 05, Number: 01, April 2021.

. Andre Aprima Mulky, Rohmat, Akhmad Alfaruq Smart Feeder Kucing Menggunakan Metode You Only Look Once (YOLO) Vol.9, No.5 Oktober 2023

. Hilal A, Manan S, Pemanfaatan Motor Servo Sebagai Penggerak CCTV Untuk Melihat Alat-Alat Monitor Dan Kondisi Pasien Di Ruang ICU GEMA TEKNOLOGI Vol. 17 No. 2 Periode Oktober 2012 – April 2013

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Published

2025-09-30

How to Cite

Tarrosa, B. A., Ramadhan, B. ., Hafizh, K. M. ., Anugrah, M. R. ., Muslimin, M., Luqyana, D. ., & Muhamad, A. M. . (2025). Perancangan Alat Pemberi Makan Hewan Otomatis dengan Sensor Ultrasonik dan Teknologi Mikrokontroler. Manutech : Jurnal Teknologi Manufaktur, 17(01), 46–51. https://doi.org/10.33504/manutech.v17i01.515

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